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Photovoltaic Energy Conversion System Fault Detection Using Fractional-Order Color Relation Classifier in Microdistribution Systems

机译:微分系统中基于分数阶颜色关系分类器的光伏能量转换系统故障检测

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摘要

In this paper, we propose a photovoltaic (PV) energy conversion system (PVECS) fault detection scheme using a fractional-order color relation classifier in microdistribution systems. Based on electrical examination method, output power degradation is used to monitor physical conditions with changes in a PV array's circuitry, including grounded faults, mismatch faults, bridged faults between two PV panels, and open-circuit faults. The PV array power depends on solar radiation and temperature, and maximum power point tracking (MPPT) control is used to maintain stable power supply to a microdistribution system in the event of a fault in the PVECS. The MPPT algorithm is employed to estimate the desired maximum power, which is then compared with the meter-read power. Fractional-order dynamic errors are determined to quantify output power degradation between the desired maximum power and the meter-read power. Then, a color relation analysis is used to separate normal conditions from fault events. For a PVECS with two panels in parallel, the simulation results demonstrate that the proposed method is suitable for real-time applications and is flexible for fault identification. Its detection rates exceeded 88.23% for six events.
机译:在本文中,我们提出了一种在微配电系统中使用分数阶颜色关系分类器的光伏(PV)能量转换系统(PVECS)故障检测方案。基于电气检查方法,输出功率降级可用于监视光伏阵列电路变化的物理条件,包括接地故障,失配故障,两个光伏面板之间的桥接故障以及开路故障。 PV阵列的功率取决于太阳辐射和温度,并且在PVECS发生故障时,最大功率点跟踪(MPPT)控制用于维持向微配电系统的稳定电源。采用MPPT算法估算所需的最大功率,然后将其与抄表功率进行比较。确定分数阶动态误差,以量化所需最大功率和抄表功率之间的输出功率降级。然后,使用颜色关系分析将正常状况与故障事件分开。仿真结果表明,对于具有两个面板并联的PVECS,该方法适用于实时应用,并且可以灵活地进行故障识别。六次事件的检出率均超过88.23%。

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